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Studies on the propagation of relativistic plasma waves in high density plasmas produced by hypersonic ionizing shock waves

机译:高超声速电离激波产生的高密度等离子体中相对论性等离子体波的传播研究

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Summary form only given. The feasibility of using an ionizing shock wave to produce high-density plasmas suitable for the propagation of large-amplitude relativistic plasma waves is being investigated. A 20-kV arc-driven shock tube of coaxial geometry produces a hypersonic shock wave (10 > Mach > 60) in argon gas, which leaves in its wake a high-density plasma (n/sub p/ < 10/sup 17/ cm/sup -3/). The shock can be made to reflect off the end of the tube, collide with its wake, and thus increase the plasma density further. After reflecting, the plasma is at rest. The shock speed is measured using piezoelectric pressure probes, and the ion density is measured using laser-induced fluorescence (LIF) techniques on argon 488.0 nm and 422.8 nm lines. Implications for the application of high-density plasmas produced in this way to such devices as a plasma wave accelerator, a photon accelerator, a plasma wave undulator, and a plasma lens have been examined.
机译:仅提供摘要表格。人们正在研究使用电离冲击波产生适合于大振幅相对论等离子体波传播的高密度等离子体的可行性。同轴几何形状的20 kV电弧驱动激波管在氩气中产生高超声速激波(10> Mach> 60),在其尾部留下高密度等离子体(n / sub p / <10 / sup 17 / cm / sup -3 /)。可以使冲击从管的末端反射出来,与管的尾流碰撞,从而进一步增加等离子体密度。反射后,等离子体处于静止状态。使用压电压力探头测量冲击速度,并使用激光诱导荧光(LIF)技术在氩气488.0 nm和422.8 nm线上测量离子密度。已经研究了将以此方式产生的高密度等离子体应用于诸如等离子体波加速器,光子加速器,等离子体波起伏器和等离子体透镜之类的装置的含义。

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